First pass at a document map viewer
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0e9e56a8f1
commit
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85
src/main.zig
85
src/main.zig
@ -1,16 +1,21 @@
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const std = @import("std");
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const c = @cImport({
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@cInclude("SDL2/SDL.h");
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});
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const assert = @import("std").debug.assert;
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pub fn main() !void {
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const window_width = 300;
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const window_height = 500;
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if (c.SDL_Init(c.SDL_INIT_VIDEO) != 0) {
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c.SDL_Log("Unable to initialize SDL: %s", c.SDL_GetError());
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return error.SDLInitializationFailed;
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}
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defer c.SDL_Quit();
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const screen = c.SDL_CreateWindow("My Game Window", c.SDL_WINDOWPOS_UNDEFINED, c.SDL_WINDOWPOS_UNDEFINED, 300, 73, c.SDL_WINDOW_OPENGL) orelse
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const screen = c.SDL_CreateWindow("Document Map Viewer", c.SDL_WINDOWPOS_UNDEFINED, c.SDL_WINDOWPOS_UNDEFINED, window_width, window_height, c.SDL_WINDOW_OPENGL) orelse
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{
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c.SDL_Log("Unable to create window: %s", c.SDL_GetError());
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return error.SDLInitializationFailed;
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@ -23,24 +28,15 @@ pub fn main() !void {
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};
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defer c.SDL_DestroyRenderer(renderer);
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const zig_bmp = @embedFile("zig.bmp");
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const rw = c.SDL_RWFromConstMem(zig_bmp, zig_bmp.len) orelse {
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c.SDL_Log("Unable to get RWFromConstMem: %s", c.SDL_GetError());
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return error.SDLInitializationFailed;
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};
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defer assert(c.SDL_RWclose(rw) == 0);
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const source_code = @embedFile("GapProbeScan.cs");
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const zig_surface = c.SDL_LoadBMP_RW(rw, 0) orelse {
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c.SDL_Log("Unable to load bmp: %s", c.SDL_GetError());
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const color_result = c.SDL_SetRenderDrawColor(renderer, 255, 255, 255, 255);
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if (color_result != 0) {
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c.SDL_Log("Unable to set draw color: %d", color_result);
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return error.SDLInitializationFailed;
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};
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defer c.SDL_FreeSurface(zig_surface);
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}
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const zig_texture = c.SDL_CreateTextureFromSurface(renderer, zig_surface) orelse {
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c.SDL_Log("Unable to create texture from surface: %s", c.SDL_GetError());
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return error.SDLInitializationFailed;
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};
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defer c.SDL_DestroyTexture(zig_texture);
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// const surface = c.SDL_GetWindowSurface(screen);
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var quit = false;
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while (!quit) {
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@ -54,8 +50,61 @@ pub fn main() !void {
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}
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}
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_ = c.SDL_RenderClear(renderer);
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_ = c.SDL_RenderCopy(renderer, zig_texture, null, null);
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const initial_color_result = c.SDL_SetRenderDrawColor(renderer, 255, 255, 255, 255);
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if (initial_color_result != 0) {
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c.SDL_Log("Unable to set draw color: %d", initial_color_result);
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return error.SDLInitializationFailed;
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}
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var x:c_int = 0;
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while (x < window_width) : (x += 1) {
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var y:c_int = 0;
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while (y < window_height) : (y += 1) {
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// std.debug.print("x: {any}, y: {any}\n", .{x, y});
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const draw_result = c.SDL_RenderDrawPoint(renderer, x, y);
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if (draw_result != 0) {
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c.SDL_Log("Unable to draw point: %d", draw_result);
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return error.SDLDrawingFailed;
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}
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}
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}
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var i:usize = 0;
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x = 0;
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var y:c_int = 0;
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var color:bool = false;
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while (i < source_code.len) : (i += 1) {
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if (source_code[i] == 10) {
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x = 0;
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y += 1;
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continue;
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}
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if (source_code[i] == 32 and color) {
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color = false;
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const white_color_result = c.SDL_SetRenderDrawColor(renderer, 255, 255, 255, 255);
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if (white_color_result != 0) {
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c.SDL_Log("Unable to set draw color: %d", white_color_result);
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return error.SDLInitializationFailed;
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}
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}
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else if (source_code[i] != 32 and !color) {
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color = true;
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const black_color_result = c.SDL_SetRenderDrawColor(renderer, 0, 0, 0, 255);
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if (black_color_result != 0) {
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c.SDL_Log("Unable to set draw color: %d", black_color_result);
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return error.SDLInitializationFailed;
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}
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}
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const draw_result = c.SDL_RenderDrawPoint(renderer, x, y);
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if (draw_result != 0) {
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c.SDL_Log("Unable to draw point: %d", draw_result);
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return error.SDLDrawingFailed;
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}
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x += 1;
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}
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c.SDL_RenderPresent(renderer);
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c.SDL_Delay(17);
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